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Biomedical subjects

K Nishii

Publications and source records attributed to K Nishii.

At least 37 records · Page 2Linked to original sources

Aggressive neoplastic plasma cell growth with MLL gene rearrangement after high-dose therapy with autologous stem cell support for multiple myeloma.

We report a case of a patient with IgA kappa multiple myeloma (MM) mobilized with etoposide and subsequently receiving high-dose melphalan (HDM) with stem cell support. She relapsed rapidly post transplantation. Southern blot and fluorescent in situ hybridization analysis showed MLL gene rearrangement in the myeloma cells, which was not detected in the sample at diagnosis or in the PBSC harvested with etoposide plus G-CSF. These observations suggest that clonal rearrangement of the MLL gene is caused by etoposide. Patients with MM undergoing HDM with stem cell rescue may be at an increased risk of not only secondary leukemia, but also secondary genetic abnormalities in myeloma cells, especially those receiving priming with etoposide for peripheral blood stem cell collection.

Antineoplastic Agents, Phytogenic↗

Efficient ex vivo generation of dendritic cells from CD14+ blood monocytes in the presence of human serum albumin for use in clinical vaccine trials.

Dendritic cells (DC) with the potential to induce anti-tumour immunity represent one of the promising candidates for cancer vaccines. Efficiency of ex vivo DC generation depends on culture conditions, especially protein components in the plasma or serum used. Using human serum albumin (HSA), we devised a constant and reproducible culture method for DC generation from peripheral blood CD14+ cells. The number of DC obtained with 2% HSA-supplemented cultures containing granulocyte-macrophage colony-stimulating factor and interleukin 4 were consistently higher than in cultures with various concentrations of autologous plasma or serum. The concentrations and time points tested for plasma or serum considerably affected the number of DC recovered. DC prepared with HSA acquired the ability to uptake dextran, and expressed high levels of major histocompatibility (MHC) and co-stimulatory molecules similar to DC cultured with autologous plasma or serum. Although DC cultured with autologous plasma or serum consisted of CD1a+ and CD1a- populations, DC differentiated in the presence of HSA expressed CD1a. DC obtained with HSA primed and induced immunogenic peptide-specific cytotoxic T lymphocytes against a tumour rejection antigen, HER2. These findings suggest that our method for preparation of DC with HSA should prove valuable in DC generation for immunotherapy.

Cancer Vaccines↗

Prediction of the potentially fertile period by urinary hormone measurements using a new home-use monitor: comparison with laboratory hormone analyses.

BACKGROUND: The study compared a new urinary hormone monitoring system, Clearview Primera Fertility Monitor (CPFM), with laboratory hormone analyses in the prediction of the potentially fertile period. METHODS: Thirty healthy female volunteers provided blood and early morning urine samples for one cycle. Serum oestradiol, progesterone and luteinizing hormone (LH), and urinary LH and oestrone-3-glucuronide (E3G) were measured. The fertility status of volunteers; Low, High or Peak, was collected from monitors and compared with the hormone measurements. RESULTS: There was agreement between the first day of peak fertility and the urinary LH peak day in 65.6% of cycles and detection 1 or 2 days before the urinary LH peak day in 24.1 and 6.9% of cycles respectively. In 58.6% of cycles the system detected up to 5 days of increased fertility prior to the urinary LH peak day. Warning days of the urinary LH peak were similarly determined using defined thresholds of E3G and oestradiol providing up to 5 days warning in 82.8 and 96.6% of cycles respectively. CONCLUSIONS: The system can provide couples attempting to conceive with information about the potentially fertile days in the cycle in order that they may time intercourse. It also has potential for use in evaluation and treatment of infertile couples.

Adult↗

Expression pattern of hybrid phenotype in adult acute lymphoblastic leukemia.

We examined the expression of hybrid phenotype in 236 adults with acute lymphoblastic leukemia (ALL; 188 B-lineage ALL and 48 T-lineage ALL). In B-lineage ALL, myeloid antigen (mAg) CD15 was concentrated in CD10-CD20- cases (49%); CD13 (42%); and CD33 (43%) in CD10+CD20- cases. This trend had no correlation with the presence of Ph1 or t(4;11) chromosomal abnormality. T-cell antigen CD2, CD4, and CD7 was seen in four, four, and two cases, respectively, and CD4+ and CD7+ cases commonly expressed CD13 and/or CD33 (CD13/CD33). In T-lineage ALL, expression of mAg, CD11b (47%), CD13 (38%), CD15 (28%), and CD33 (51%) was restricted to CD3- cases. B-cell antigen CD19 was found in two cases with CD7 solely as T-cell antigen, and these cases possessed CD13/CD33. CD21 was detected in three cases with CD3. In whole ALL, CD13/CD33 was associated closely with the presence of stem-cell antigen CD34, and in T-lineage ALL, CD13/CD33 had a significant correlation with additional stem-cell features, such as HLA-DR, multidrug resistance 1 (MDR1) and c-kit gene expression. Our results suggest that immature ALL cells frequently express B+M+, T+M+, and occasionally B+T+M+ phenotype; that B+T+M- phenotype is extremely rare; and that mAg expression in B-lineage ALL is complicated as compared to T-lineage ALL.

Adolescent↗

Characterization of the human NTAK gene structure and distribution of the isoforms for rat NTAK mRNA.

NTAK (neural- and thymus-derived activator for the ErbB kinase, neuregulin-2) is a novel member of the epidermal growth factor (EGF) family. We have isolated and characterized the human NTAK gene, comprising 12 exons spanning in excess of 55 kilobases (kb). The 7. 0kb long mRNA of the human NTAK gene was expressed in the human neuroblastoma SK-N-SH cell line with two alternative isoforms detected. Furthermore, six isoforms have been identified from rat brain and PC-12 cells. Although the alpha isoform of the NTAK gene was found to be expressed in all tissues including brain, the beta isoform was expressed only in rat brain tissues. Potential regulatory regions included consensus binding sites for AP-2, TF-IIIA, Sp-1, and YY-1 located in the 5'-flanking region of the NTAK gene.

Amino Acid Sequence↗

Modest neuropsychological deficits caused by reduced noradrenaline metabolism in mice heterozygous for a mutated tyrosine hydroxylase gene.

Tyrosine hydroxylase (TH) is the initial and rate-limiting enzyme for the biosynthesis of catecholamines that are considered to be involved in a variety of neuropsychiatric functions. Here, we report behavioral and neuropsychological deficits in mice carrying a single mutated allele of the TH gene in which TH activity in tissues is reduced to approximately 40% of the wild-type activity. In the mice heterozygous for the TH mutation, noradrenaline accumulation in brain regions was moderately decreased to 73-80% of the wild-type value. Measurement of extracellular noradrenaline level in the frontal cortex by the microdialysis technique showed a reduction in high K(+)-evoked noradrenaline release in the mutants. The mutant mice displayed impairment in the water-finding task associated with latent learning performance. They also exhibited mild impairment in long-term memory formation in three distinct forms of associative learning, including active avoidance, cued fear conditioning, and conditioned taste aversion. These deficits were restored by the drug-induced stimulation of noradrenergic activity. In contrast, the spatial learning and hippocampal long-term potentiation were normal in the mutants. These results provide genetic evidence that the central noradrenaline system plays an important role in memory formation, particularly in the long-term memory of conditioned learning.

Animals↗

Activity of interleukin 6 in the differentiation of monocytes to macrophages and dendritic cells.

Peripheral blood monocytes are common precursor cells of dendritic cells (DCs) and macrophages. We have searched for factors with the potential to regulate the differentiation of monocytes to DCs and macrophages. When CD14+ monocytes are cultured with granulocyte-macrophage colony-stimulating factor (GM-CSF) and interleukin (IL) 4, the CD14+CD1a- population, which consists of macrophages, was found in the serum-containing cultures but not in the serum-free cultures. Addition of IL-6 receptor-neutralizing monoclonal antibody (mAb) or gp130-neutralizing mAb to the serum-containing cultures resulted in a decreased population of CD14+CD1a- cells. An increase in the CD14+CD1a- population with reduction in CD14-CD1a+ DCs was observed with the addition of IL-6 to cultures, whereas IL-11, leukaemia inhibitory factor, oncostatin M or macrophage colony-stimulating factor did not affect the differentiation of monocytes in the presence of GM-CSF plus IL-4. This effect of IL-6 was blocked by tumour necrosis factor alpha (TNF-alpha), lipopolysaccharide (LPS), IL-1beta, CD40 ligand (CD40L) and transforming growth factor beta1 (TGF-beta1). Among these factors, TNF-alpha was most potent in interfering with the action of IL-6. These results suggest that IL-6 inhibits the differentiation of monocytes to DCs by promoting their differentiation toward macrophages, which is modulated by factors such as TNF-alpha, LPS, IL-1beta, CD40L and TGF-beta1.

Adult↗

Loss of connexin45 causes a cushion defect in early cardiogenesis.

At around embryonic day 9, the primitive heart of a mouse embryo undergoes spectacular alterations within 24 hours. We created mice harboring an nls-lacZ gene in place of connexin45, which encodes the only known gap junction protein in the primitive heart before embryonic day 9, using the Cre-loxP system. Connexin45-deficient mice died of heart failure at around embryonic day 10. They initiated heart contractions, but conduction block appeared within 24 hours after the first contractions. Their cardiac walls displayed an endocardial cushion defect, while the cardiac jelly was present. These abnormalities were caused by impairment of the epithelial-mesenchymal transformation of the cardiac endothelium. Activation of the cardiac endothelium depended on the presence of the connexin45 gap junctions since signaling through Ca(2+)/calcineurin and NF-ATc1 (originally named NF-ATc) was disrupted in the mutant hearts. These results indicate a requirement for gap junction channels during early cardiogenesis and hence implicate connexin45 in congenital heart diseases. http://www. biologists.com/Development/movies/dev4369.html

Amino Acid Sequence↗

Bcl-2 in cell-cycle regulation of hematopoietic cells by transforming growth factor-beta1.

We reported that several growth factors regulate the doubling time of hematopoietic progenitor cells by modulating the time required to pass through the G1 phase. As recent studies revealed the link between cell death and cell-cycle progression, we asked if cell death regulators such as Bcl-2 play a role in regulating the cell-cycle of hematopoietic cells by growth factors. Among growth factors, transforming growth factor-beta1 (TGF-beta1), a negative regulator of hematopoiesis, was chosen. When a large number of cells was required for analysis, we used IL-3-dependent Ba/F3 cells instead of primary hematopoietic progenitor cells because the response of Ba/F3 cells to TGF-beta1 was similar to that of primary hematopoietic progenitor cells. TGF-beta1 decelerated the cell-cycling of hematopoietic cells by inducing a delay in G1 to S phase transition, an event associated with increase in the level of Bcl-2 as well as p27, a cyclin/cyclin-dependent kinase inhibitor. In experiments using Ba/F3 cells with the potential to produce Bcl-2 in an inducible manner, Bcl-2 apparently functions upstream of p27. The effects of TGF-beta1 on Bcl-2 and p27 expression as well as cell growth were abrogated by c-kit ligand. These findings suggest that Bcl-2 plays a crucial role in regulating the cell-cycle of hematopoietic progenitor cells.

Animals↗

Effects of cyclosporin A on refractory B-cell chronic lymphocytic leukemia.

This report details the effects of cyclosporin A (Cs-A) on the clinical course of B-cell chronic lymphocytic leukemia (B-CLL) with an increase in circulating T cells that express CD3, CD8, CD25, CD45RO, and T-cell receptor alpha beta chain. Cs-A was used for treatment of a female patient with refractory B-CLL and was shown to increase dramatically the number of leukemic B cells in association with a simultaneous increase in T cells in vivo. To study this effect more precisely, CD19+ (B cells) and CD3+ (T cells) cells were isolated from the patient and cultured in the presence or absence of Cs-A. When Cs-A was added to the culture, no cell stimulation was seen. However, CD3+ cells from the patient underwent cell death, relative to those from healthy donors. On the other hand, CD19+ cells from the patient were more resistant to Cs-A than those from healthy donors. Because in vitro experiments cannot explain this phenomenon of Cs-A increasing leukemic cells (not only B-CLL cells but also T cells), care should be exercised in the clinical use of Cs-A in B-CLL patients.

Antigens, CD19↗

Expression of B cell-associated transcription factors in B-cell precursor acute lymphoblastic leukemia cells: association with PU.1 expression, phenotype, and immunogenotype.

B-lymphocyte development progresses through discrete stages characterized by regular DNA rearrangements of the immunoglobulin (Ig) loci that lead to the transcription of Ig genes and expression of B-cell antigen receptors. These developmental processes can also be distinguished by the expression of specific cell-surface markers. Therefore, rearrangement of the Ig, T-cell receptor (TCR) genes, and surface markers are generally considered as useful markers of the B- and T-cell lineage in lymphoproliferative disorders. However, concomitant rearrangement of Ig and TCR genes (double genotype) has been reported in the most immature lymphoid malignancies (lineage promiscuity), mainly in B-cell precursor acute lymphoblastic leukemia (pre-B ALL), but the mechanism is not fully understood. DNA rearrangements and specific cell-surface markers are regulated by several specific transcription factors. To better characterize the lineage promiscuity, we studied the relationship among the expression of lymphoid-associated transcription factors, phenotype, and immunogenotype. Rearrangement of the Ig light chain kappa gene was found in 37% of pre-B ALL samples and in all B-cell chronic lymphocytic leukemia (B-CLL) samples. Rearrangement of TCR gamma gene was shown in 40% of pre-B ALL samples but was not detected in any of the B-CLL samples. Among the tested B cell-associated transcription factors, Pax5 and E47 genes were expressed in all pre-B ALL and B-CLL samples. RAG-1 gene was expressed in all pre-B ALL samples but not in the B-CLL samples. Oct-2 gene was expressed in 82% of pre-B ALL and all B-CLL samples. The expression of PU.1 gene was shown in 56% of pre-B ALL but not in the B-CLL samples. Interestingly, the samples of pre-B ALL, which did not express the PU.1 gene, showed a significantly high frequency of TCR gamma gene rearrangement. This phenomenon was not found with Oct-2 gene expression. These findings suggest that absence of PU.1 expression may result in lineage promiscuity, such as the simultaneous rearrangements of Ig and TCR genes in pre-B ALL cells.

Adult↗

Plasma sFas and sFas ligand levels in patients with thrombotic thrombocytopenic purpura and in those with disseminated intravascular coagulation.

Fas, a member of the tumor necrosis receptor superfamily, is 36 kD surface protein containing a single transmembrane region and induces apoptosis by Fas-Fas ligand binding. Soluble Fas (sFas) is produced as the form lacking 21 amino acid residues containing the transmembrane domain by alternative splicing. We found that the plasma sFas levels of 33 patients with thrombotic thrombocytopenic purpura/hemolytic uremic syndrome (TTP/HUS), 19 patients with disseminated intravascular coagulation (DIC), and 10 non-DIC patients with multiple organ failure (MOF) were significantly higher than those of 21 non-DIC patients without organ failure and those of 25 healthy volunteers. The plasma sFas ligand levels of the TTP/HUS patients, the DIC patients, and the non-DIC patients with MOF were significantly higher than those of the non-DIC patients without organ failure and those of the healthy volunteers. The plasma sFas levels were significantly correlated with the plasma sFas ligand levels in all subjects. The plasma thrombomodulin (TM) levels were increased significantly in the TTP/HUS patients, the DIC patients, and the non-DIC patients with MOF compared with the levels of the non-DIC patients without organ failure and the healthy volunteers. The plasma sFas antigen levels were correlated significantly with the plasma TM levels in all subjects. These findings suggest that the increases of sFas and sFas ligand that cause apoptosis might be related to the vascular endothelial cell injuries in TTP and DIC with organ failure.

Adult↗

Nicotine withdrawal up-regulates c-Fos transcription in pheochromocytoma cells.

The influence of nicotine on the expression of Fos family proteins, which specifically formed complexes with the AP-1 sequence, was assessed. mRNA for c-Fos, c-jun and jun-B were up-regulated at 0.5 h after nicotine treatment, elevated c-Fos also being apparent after withdrawal. Although nicotine failed to up-regulate the mRNA level of the fra-1 gene, the Fra- protein was highly expressed after both treatment and withdrawal. These results indicate that nicotine treatment may affect the transcriptional activity of many genes through c-Fos and c-Jun protein expression in neural cells, and that Fra-1 protein may make a contribution. These changes in immediately early genes (IEGs) may be associated with nicotine withdrawal symptoms.

Adrenal Gland Neoplasms↗

Low BCL-2 expression in acute leukemia with t(8;21) chromosomal abnormality.

In de novo t(8;21) AML which shows terminal neutrophilic differentiation, the BCL-2 expression was found to be significantly lower than that in types of other AML regardless of the phenotypic differentiation status. An inverse correlation between BCL-2 expression and the S/G2/M population cells was observed in AML. The S/G2/M population in t(8;21)AML was larger than in the other types of AML. In t(8;21)AML, spontaneous apoptosis after a 12-h liquid culture was prominent, and the autonomous DNA synthesis after a 72-h liquid culture was low. G-CSF and IL-5 promoted the colony formation of t(8;21)AML cells. The data suggest that, in vivo, the low BCL-2 in t(8;21)AML induced entry of cells from the G0/G1 phase to S phase, but the cells easily die by apoptosis, in vitro. The low BCL-2 expression and the supportive effects of G-CSF and IL-5 in t(8;21)AML is thought to be a key phenomenon which might be related to the formation of the in vivo blood picture, such as prominent neutrophilic differentiation and eosinophilia. Cellular extracts from t(8;21)AML cell line Kasumi-1 bound to both the AML1 and CRE binding sites in the bcl-2 promoter, but none of the cellular extracts from de novo t(8;21)AML bound to either of these sites. The DNA binding activity of transactivators in de novo t(8;21)AML is different from that in Kasumi-1 cells probably due to the phosphorylation status.

Acute Disease↗

Survival of human leukaemic B-cell precursors is supported by stromal cells and cytokines: association with the expression of bcl-2 protein.

We searched for cytokines with the potential to support the survival of human B-cell precursor acute lymphoblastic leukaemia (pre-B ALL) cells. 47 patients with pre-B ALL were classified into four stages: stage I, CD19+CD10-CD20-; stage II, CD19+CD10+CD20-; stage III, CD19+CD10+CD20+cytoplasmic mu-heavy chain (cmu)-; stage IV, CD19+CD10+CD20+cmu. Interleukin (IL)-3 receptor alpha chain (IL-3Ralpha) was expressed in all stages, whereas the expressions of IL-7Ralpha and IL-2Ralpha were pronounced in stages IV and II, respectively. Neither IL-3, IL-7 nor IL-2 supported the survival of pre-B ALL cells. When pre-B ALL cells were layered on stromal, MS-10, cells, viability of the pre-B ALL cells increased. Addition of IL-3 to culture containing MS-10 cells enhanced the survival of pre-B ALL cells in all cases, whereas addition of IL-7 augmented the survival of pre-B ALL cells of some cases of stage III and all cases of stage IV. The survival of pre-B ALL cells was also supported by the conditioned media of MS-10 cells. Stromal-cell-derived factor 1 (SDF-1) supported the survival of pre-B ALL cells. Effects of the conditioned media of MS-10 cells were abrogated by an anti-SDF-1 neutralizing antibody. The extent of survival of pre-B ALL cells supported by stromal cells and IL-3 and IL-7, correlated with the expression level of bcl-2 protein. The effects of stromal cells may be in part related to SDF-1.

Adult↗

Myeloid differentiation antigen and cytokine receptor expression on acute myelocytic leukaemia cells with t(16;21)(p11;q22): frequent expression of CD56 and interleukin-2 receptor alpha chain.

We report the cellular characteristics of cells from three patients with de novo acute myelocytic leukaemia (AML) with t(16;21)(p11;q22), two M4 and one M5a according to the FAB classification, and two permanent cell lines with t(16;21)(p11;q22), TSU1621MT and YNH-1. The FUS/ERG fusion mRNA was demonstrated in all cases by reverse transcriptase-polymerase chain reaction (RT-PCR). The immunophenotypes of the AML cells, and YNH-1 and TSU1621MT cell lines with t(16;21) were characterized as CD34+CD33+CD13+CD11b+CD18+CD56+ HLA-DR-/+. Cells from all samples strongly expressed c-kit, granulocyte colony-stimulating factor receptor (G-CSFR), c-fms (macrophage colony-stimulating factor receptor), interleukin-3 receptor alpha chain (IL-3Ralpha), and granulocyte macrophage colony-stimulating factor receptor alpha chain (GM-CSFRalpha), and these data corresponded well to the growth responsiveness to the cytokines. IL-2Ralpha expression was also found in all t(16;21) samples, but IL-2 did not act on the proliferation of the leukaemic cells in in vitro cultures. G-CSF distinctly promoted the proliferation of leukaemic cells of t(16;21) AML, but did not enhance the expression of MPO and neutrophil differentiation of these cells. Our findings indicate that AML cells with t(16;21) preserve stem cell properties such as CD34 and c-kit expression, and suggest that they have the potential to differentiate into a monocytic lineage. The relationship between the unique cellular characteristics (especially CD56 and IL-2Ralpha expression) and FUS/ERG protein remains undetermined.

Adolescent↗

Abnormalities of developmental cell death in Dad1-deficient mice.

BACKGROUND: Dad1, the defender against apoptotic cell death, comprises the oligosaccharyltransferase complex and is well conserved among eukaryotes. In hamster BHK21-derived tsBN7 cells, loss of Dad1 causes apoptosis which cannot be prevented by Bcl-2. RESULTS: To determine the role of Dad1 function in vivo, we prepared by gene targeting, mice harbouring a disrupted Dad1 gene. Homozygous mutants died shortly after they were implanted with the characteristic features of apoptosis. In an in vitro blastocyst culture system, Dad1-null cells displayed abnormalities which were comparable to those obtained in vivo. However, oligosaccharyltransferase activity was apparently retained even after the Dad1-null cells were destined to die. Some live-born heterozygous mutants displayed soft-tissue syndactyly. Mild thymic hypoplasia was also indicated in heterozygotes. CONCLUSION: These results suggest the involvement of the Dad1 gene in the acquisition of a common syndactyly phenotype, as well as in the control of programmed cell death during development.

Animals↗